A conductive inkjettable fluid was formulated based on carbon-coated copper nanoparticles. The copper particles were produced by vapor-phase reduction of copper chloride and coated in situ with carbon. The average particle size was 44-88 nm depending on the chosen production parameters. The optimized fluid was a water/ethylene glycol monobutyl ether/n-propanol mixture with 25 wt% nanoparticles, stabilized by a polymeric dispersing agent. A conductivity of 6.4 S/m was obtained with a single deposited layer without sintering or high-temperature annealing. The materials are interesting for several applications such as antistatic coatings, resistors, and sensors
A simple method of carbonaceous films coating onto copper (Cu) nanopowder is investigated with solid...
Conductive ink with Copper nanoparticles (Cu NPs) has various advantages compared with conventional ...
International audienceCarbon nanoparticles can be obtained by the pyrolysis of thermoset resorcinol ...
A conductive inkjettable fluid was formulated based on carbon-coated copper nanoparticles. The coppe...
An aqueous inkjettable conductive fluid based on carbon coated copper nanoparticles has been develop...
A modified electrolysis method was employed to synthesize copper nanoparticles for mass production. ...
Pulsed-wire evaporation (PWE) was used to synthesize copper nanoparticles having an average diameter...
Printable functional materials opened up a new area of applications that have immense market potenti...
Copper (Cu) nanoparticles as the metal nanoparticles in the conductive ink were synthesized using el...
Conductive inks are mainly based on metallic particles. At the moment silver flake inks govern the m...
A novel method of carbonaceous coating on the surface of copper particles was developed through a ch...
Nanotechnology is used in a wide range of fields, including medicine, cosmetics, and new material de...
In this thesis, production of Co, Ni, and Cu nanoparticles by hydrogen reduction of metal chlorides ...
A low-temperature synthesis of copper conductive film was conducted at the near-decomposition-onset ...
This paper is focused on copper–nickel nanoparticle resistive inks compatible with thick printed cop...
A simple method of carbonaceous films coating onto copper (Cu) nanopowder is investigated with solid...
Conductive ink with Copper nanoparticles (Cu NPs) has various advantages compared with conventional ...
International audienceCarbon nanoparticles can be obtained by the pyrolysis of thermoset resorcinol ...
A conductive inkjettable fluid was formulated based on carbon-coated copper nanoparticles. The coppe...
An aqueous inkjettable conductive fluid based on carbon coated copper nanoparticles has been develop...
A modified electrolysis method was employed to synthesize copper nanoparticles for mass production. ...
Pulsed-wire evaporation (PWE) was used to synthesize copper nanoparticles having an average diameter...
Printable functional materials opened up a new area of applications that have immense market potenti...
Copper (Cu) nanoparticles as the metal nanoparticles in the conductive ink were synthesized using el...
Conductive inks are mainly based on metallic particles. At the moment silver flake inks govern the m...
A novel method of carbonaceous coating on the surface of copper particles was developed through a ch...
Nanotechnology is used in a wide range of fields, including medicine, cosmetics, and new material de...
In this thesis, production of Co, Ni, and Cu nanoparticles by hydrogen reduction of metal chlorides ...
A low-temperature synthesis of copper conductive film was conducted at the near-decomposition-onset ...
This paper is focused on copper–nickel nanoparticle resistive inks compatible with thick printed cop...
A simple method of carbonaceous films coating onto copper (Cu) nanopowder is investigated with solid...
Conductive ink with Copper nanoparticles (Cu NPs) has various advantages compared with conventional ...
International audienceCarbon nanoparticles can be obtained by the pyrolysis of thermoset resorcinol ...